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Kalman interpolation filter for channel estimation of LTE downlink in high-mobility environments

机译:卡尔曼插值滤波器用于高移动性环境下LTE下行链路的信道估计

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The estimation of fast-fading LTE downlink channels in high-speed applications of LTE advanced is investigated in this article. In order to adequately track the fast time-varying channel response, an adaptive channel estimation and interpolation algorithm is essential. In this article, the multi-path fast-fading channel is modelled as a tapped-delay, discrete, finite impulse response filter, and the time-correlation of the channel taps is modelled as an autoregressive (AR) process. Using this AR time-correlation, we develop an extended Kalman filter to jointly estimate the complex-valued channel frequency response and the AR parameters from the transmission of known pilot symbols. Furthermore, the channel estimates at the known pilot symbols are interpolated to the unknown data symbols by using the estimated time-correlation. This article integrates both channel estimation at pilot symbols and interpolation at data symbol into the proposed Kalman interpolation filter. The bit error rate performance of our new channel estimation scheme is demonstrated via simulation examples for LTE and fast-fading channels in high-speed applications.
机译:本文研究了高级LTE高速应用中快速衰落LTE下行链路信道的估计。为了充分跟踪快速时变信道响应,自适应信道估计和内插算法至关重要。在本文中,将多径快速衰落信道建模为抽头延迟,离散,有限冲激响应滤波器,并将信道抽头的时间相关建模为自回归(AR)过程。使用这种AR时间相关性,我们开发了一个扩展的卡尔曼滤波器,以便从已知导频符号的传输中联合估计复值信道频率响应和AR参数。此外,通过使用估计的时间相关,将已知导频符号处的信道估计内插到未知数据符号。本文将导频符号处的信道估计和数据符号处的插值都集成到了拟议的卡尔曼插值滤波器中。通过针对高速应用中LTE和快速衰落信道的仿真示例,演示了我们新信道估计方案的误码率性能。

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